Functional analysis of amino acid residues constituting the dNTP binding pocket of HIV-1 reverse transcriptase

被引:73
|
作者
Harris, D [1 ]
Kaushik, N [1 ]
Pandey, PK [1 ]
Yadav, PNS [1 ]
Pandey, VN [1 ]
机构
[1] Univ Med & Dent New Jersey, New Jersey Med Sch, Dept Biochem & Mol Biol, Newark, NJ 07103 USA
关键词
D O I
10.1074/jbc.273.50.33624
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In order to understand the functional implication of residues constituting the dNTP-binding pocket of human immunodeficiency virus type 1 reverse transcriptase, we performed site-directed mutagenesis at positions 65, 72, 113, 115, 151, 183, 184, and 219, and the resulting mutant enzymes were examined for their biochemical properties and nucleotide selectivity on RNA and DNA templates. Mutations at positions 65, 115, 183, 184, and 219 had negligible to moderate influence on the polymerase activity, while Ala substitution at positions 72 and 151 as well as substitution with Ala or Glu at position 113 severely impaired the polymerase function of the enzyme. The K219A, Y115F, and Q151M mutants had no influence on the fidelity; Y183A, Y183F, K65A, and Q151N mutants exhibited higher fidelity on both RNA and DNA templates, while Y115A was less error-prone selectively on a DNA template. Analysis of the three-dimensional model of the enzyme-template primer-dNTP ternary complex suggests that residues Tyr-183, Lys-65, and Gln-151 may have impact on the flexibility of the dNTP-binding pocket by virtue of their multiple interactions with the dNTP, template, primer, and other neighboring residues constituting the pocket. Recruitment of the correct versus incorrect nucleotides may be a function of the flexibility of this pocket. A relatively rigid pocket would provide greater stringency, resulting in higher fidelity of DNA synthesis in contrast to a flexible pocket. Substitution of a residue having multiple interactions with a residue having reduced interaction capability will alter the internal geometry of the pocket, thus directly influencing the fidelity.
引用
收藏
页码:33624 / 33634
页数:11
相关论文
共 50 条
  • [31] HIV-1 REVERSE-TRANSCRIPTASE RESIDUES THAT INFLUENCE SENSITIVITY TO NONNUCLEOSIDE INHIBITORS
    BYRNES, VW
    SARDANA, VV
    CONDRA, JH
    SCHLEIF, WA
    SCHNEIDER, CL
    WATERBURY, JA
    WOLFGANG, JA
    GRAHAM, DJ
    GOTLIB, L
    SCHLABACH, AJ
    WOLANSKI, BS
    LONG, WJ
    RHODES, A
    TITUS, DL
    ROTH, E
    BLAHY, OM
    EMINI, EA
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, : 75 - 75
  • [32] Effects of efavirenz binding on the subunit equilibria of HIV-1 reverse transcriptase
    Venezia, CF
    Howard, KJ
    Ignatov, ME
    Holladay, LA
    Barkley, MD
    BIOCHEMISTRY, 2006, 45 (09) : 2779 - 2789
  • [33] A biochemical look into the nucleotide binding site of HIV-1 reverse transcriptase
    Menéndez-Arias, L
    Cases-González, CE
    Gutiérrez-Rivas, M
    FIFTH EUROPEAN CONFERENCE ON EXPERIMENTAL AIDS RESEARCH (ECEAR 2000), 2000, : 1 - 9
  • [34] Conformational Plasticity of the NNRTI-Binding Pocket in HIV-1 Reverse Transcriptase: A Fluorine Nuclear Magnetic Resonance Study
    Sharaf, Naima G.
    Ishima, Rieko
    Gronenborn, Angela M.
    BIOCHEMISTRY, 2016, 55 (28) : 3864 - 3873
  • [35] Identification of alternative amino acid substitutions in drug-resistant variants of the HIV-1 reverse transcriptase
    Berkhout, Ben
    Back, Nicole K. T.
    de Ronde, Anthony
    Jurriaans, Suzanne
    Bakker, Margreet
    Parkin, Neil T.
    van der Hoek, Lia
    AIDS, 2006, 20 (11) : 1515 - 1520
  • [36] FUNCTIONAL-ANALYSIS OF HIV-1 REVERSE-TRANSCRIPTASE AMINO-ACIDS INVOLVED IN RESISTANCE TO MULTIPLE NONNUCLEOSIDE INHIBITORS
    SARDANA, VV
    EMINI, EA
    GOTLIB, L
    GRAHAM, DJ
    LINEBERGER, DW
    LONG, WJ
    SCHLABACH, AJ
    WOLFGANG, JA
    CONDRA, JH
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1992, 267 (25) : 17526 - 17530
  • [37] HIV-1 Nucleocapsid Traps Reverse Transcriptase on Nucleic Acid Substratest
    Grohmann, Dina
    Godet, Julien
    Mely, Yves
    Darlix, Jean-Luc
    Restle, Tobias
    BIOCHEMISTRY, 2008, 47 (46) : 12230 - 12240
  • [38] Derivatives of Mesoxalic Acid Block Translocation of HIV-1 Reverse Transcriptase
    Bernatchez, Jean A.
    Paul, Rakesh
    Tchesnokov, Egor P.
    Ngure, Marianne
    Beilhartz, Greg L.
    Berghuis, Albert M.
    Lavoie, Rico
    Li, Lianhai
    Auger, Anick
    Melnyk, Roman A.
    Grobler, Jay A.
    Miller, Michael D.
    Hazuda, Daria J.
    Hecht, Sidney M.
    Goette, Matthias
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (03) : 1474 - 1484
  • [39] 2-STEP BINDING OF HIV-1 REVERSE-TRANSCRIPTASE TO NUCLEIC-ACID SUBSTRATES
    KRUHOFFER, M
    URBANKE, C
    GROSSE, F
    NUCLEIC ACIDS RESEARCH, 1993, 21 (17) : 3943 - 3949
  • [40] NEVIRAPINE BINDING DOMAIN FROM HIV-1 REVERSE-TRANSCRIPTASE CONFERS SENSITIVITY TO HIV-2 REVERSE-TRANSCRIPTASE
    BACOLLA, A
    HANSEN, GL
    ROSE, JM
    SHIH, CK
    GRIFFIN, JA
    FASEB JOURNAL, 1992, 6 (01): : A60 - A60